Abstract:
The present disclosure relates to user interfaces for manipulating user interface objects. A device, including a display and a rotatable input mechanism, is described in relation to manipulating user interface objects. In some examples, the manipulation of the object is a scroll, zoom, or rotate of the object. In other examples, objects are selected in accordance with simulated magnetic properties.
Abstract:
Techniques for a displaying user interfaces screens of a calendar application include displaying different screens based on an input modality. The calendar application may respond differently to inputs from a touch-sensitive screen having higher intensities, inputs having lower intensities, and so forth.
Abstract:
Context- specific user interfaces for use with a portable multifunction device are disclosed. The methods described herein for context-specific user interfaces provide indications of time and, optionally, a variety of additional information. Further disclosed are non-transitory computer-readable storage media, systems, and devices configured to perform the methods described herein.
Abstract:
Context-specific user interfaces for use with a portable multifunction device are disclosed. The methods described herein for context-specific user interfaces provide indications of time and, optionally, a variety of additional information. Further disclosed are non-transitory computer-readable storage media, systems, and devices configured to perform the methods described herein.
Abstract:
Methods for sharing user-configurable graphical constructs, e.g., for use with a portable multifunction device, are disclosed. The methods described herein allow for sharing user configurable graphical constructs that contain independently configurable graphical elements and graphical assets. Further disclosed are non-transitory computer-readable storage media, systems, and devices configured to perform the methods described herein.
Abstract:
The present disclosure relates to user interfaces for manipulating user interface objects. A device, including a display and a rotatable input mechanism, is described in relation to manipulating user interface objects. In some examples, the manipulation of the object is a scroll, zoom, or rotate of the object. In other examples, objects are selected in accordance with simulated magnetic properties.
Abstract:
The present disclosure relates to manipulating a user interface on a wearable electronic device using a mechanical crown. In some examples, the user interface can be scaled in response to a rotation of the crown. The direction of the scaling and the amount of 5 scaling can depend on the direction and amount of rotation of the crown, respectively. In some examples, the amount of scaling can be proportional to the change in rotation angle of the crown. In other examples, a speed of scaling can depend on a speed of angular rotation of the crown. In these examples, a greater speed of rotation can cause a greater speed of scaling to be performed on the displayed view.
Abstract:
User interface navigation on a personal electronics device based on movements of a crown is disclosed. The device can select an appropriate level of information arranged along a z-axis for display based on crown movement. The navigation can be based on an angular velocity of the crown.